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带有锚定基团的蒽单分子结的侧基介导热电性质

Side-group-mediated thermoelectric properties of anthracene single-molecule junction with anchoring groups.

作者信息

Ramezani Akbarabadi Saeideh, Rahimpour Soleimani Hamid, Bagheri Tagani Maysam

机构信息

Computational Nanophysics Laboratory (CNL), Department of Physics, University of Guilan, Rasht, 41335-1914, Iran.

出版信息

Sci Rep. 2021 Apr 26;11(1):8958. doi: 10.1038/s41598-021-88297-2.

Abstract

Charge transfer characteristics of single-molecule junctions at the nanoscale, and consequently, their thermoelectric properties can be dramatically tuned by chemical or conformational modification of side groups or anchoring groups. In this study, we used density functional theory (DFT) combined with the non-equilibrium Green's function (NEGF) formalism in the linear response regime to examine the thermoelectric properties of a side-group-mediated anthracene molecule coupled to gold (Au) electrodes via anchoring groups. In order to provide a comparative inspection three different side groups, i.e. amine, nitro and methyl, in two different positions were considered for the functionalization of the molecule terminated with thiol or isocyanide anchoring groups. We showed that when the anchored molecule is perturbed with side group, the peaks of the transmission spectrum were shifted relative to the Fermi energy in comparison to the unperturbed molecule (i.e. without side group) leading to modified thermoelectric properties of the system. Particularly, in the thiol-terminated molecule the amine side group showed the greatest figure of merit in both positions which was suppressed by the change of side group position. However, in the isocyanide-terminated molecule the methyl side group attained the greatest thermoelectric efficiency where its magnitude was relatively robust to the change of side group position. In this way, different combinations of side groups and anchoring groups can improve or suppress thermopower and the figure of merit of the molecular junction depending on the interplay between charge donating/accepting nature of the functionals or their position.

摘要

单分子结在纳米尺度下的电荷转移特性,以及由此产生的热电特性,可以通过侧基或锚定基团的化学修饰或构象修饰而得到显著调节。在本研究中,我们采用密度泛函理论(DFT)结合线性响应区域中的非平衡格林函数(NEGF)形式,来研究通过锚定基团与金(Au)电极耦合的侧基介导蒽分子的热电特性。为了进行比较研究,我们考虑了在两个不同位置上对以硫醇或异氰化物锚定基团终止的分子进行功能化时的三种不同侧基,即胺基、硝基和甲基。我们表明,当锚定分子受到侧基扰动时,与未受扰动的分子(即没有侧基的分子)相比,传输光谱的峰值相对于费米能发生了移动,从而导致系统的热电特性发生改变。特别地,在硫醇终止的分子中,胺侧基在两个位置上都表现出最大的品质因数,而这种品质因数会因侧基位置的变化而受到抑制。然而,在异氰化物终止的分子中,甲基侧基获得了最大的热电效率,其大小对侧基位置的变化相对不敏感。通过这种方式,侧基和锚定基团的不同组合可以根据官能团的电荷供体/受体性质或其位置之间的相互作用来提高或抑制分子结的热电势和品质因数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c62/8076224/720a87e1fe91/41598_2021_88297_Fig1_HTML.jpg

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